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Kumar, P., S. Kaur, E. Weller, and S.-K. Min, 2019Influence of natural climate variability on the extreme ocean surface wave heights over the Indian OceanJ. Geophys. Res. Oceans, 124, 6176-6199,

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Kim, M.-K., J.-S. Oh, C.-K. Park, S.-K. Min, K.-O. Boo, and J.-H. Kim, 2019: Possible impact of the diabatic heating over the Indian subcontinent on heat waves in South Korea. Int. J. Climatol., 39, 1166-1180, doi: 10.1002/joc.5869.

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Park, C., and S.-K. Min, 2019: Multi-RCM near-term projections of summer climate extremes over East Asia​. Climate Dyn., 52, 4937-4952, doi: 10.1007/s00382-018-4425-7.

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Yoo, Y.-E., S.-W. Son, ​J.-H. Lee, and S.-K. Min, 2019: Abrupt decrease of wintertime cold nights in Korea in the late 1980s. Asia-Pac. J. Atmos. Sci., 55, 31-39, doi: 10.1007/s13143-018-0057-4.

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Min, S.-K., Y.-H. Kim, I.-H. Park, D. Lee, S. Sparrow, D. Wallom, and D. Stone, 2019: Anthropogenic contribution to the 2017 earliest summer onset in South Korea. Bull. Amer. Meteor. Soc., 100, S73-S77, doi: 10.1175/BAMS-D-18-0096.1.

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Park, B.-J.Y.-H. Kim, S.-K. Min, and E.-P. Lim, 2018: Anthropogenic and natural contributions to the lengthening of the summer season in the Northern Hemisphere. J. Climate, 31, 6803-6819, doi: 10.1175/JCLI-D-17-0643.1​.

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Paik, S., and S.-K. Min, 2018: Assessing the impact of volcanic eruptions on climate extremes using CMIP5 models. J. Climate, 31, 5333-5349, doi: 10.1175/JCLI-D-17-0651.s1.

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Kim, Y.-H., S.-K. Min, D. A. Stone, H. Shiogama, and P. Wolski, 2018: Multi-model event attribution of the summer 2013 heat wave in Korea. Weather Clim. Extrem., 20, 33-44, doi: 10.1016/j.wace.2018.03.004​.

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Lee D., S.-K. Min, E. Fischer, H. Shiogama, I. Bethke, L. Lierhammer, and J. Scinocca, 2018: Impacts of half a degree additional warming on the Asian summer monsoon rainfall characteristics. Environ. Res. Lett., ​13, 044033, doi: 10.1088/1748-9326/aab55d.

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Yeh S.-W., W. Cai, S.-K. Min, M. J. McPhaden, D. Dommenget, B. Dewitte, M. Collins, K. Ashok, S.-I. An, B.-Y. Yim and J.-S. Kug​, 2018: ENSO atmospheric teleconnections and their response to greenhouse gas forcing. Rev. Geophys., 56, 185-206, doi: 10.1002/2017RG000568. (Editor's highlight)

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Kim G., D.-H. Cha, C. Park, G. Lee, C.-S. Jin, D.-K. Lee, M.-S. Suh, J.-B. Ahn, S.-K. Min, S.-Y. Hong, and H.-S. Kang, 2018: Future changes in extreme precipitation indices over Korea. Int. J. Climatol.​, S1, e862-e874, doi: 10.1002/joc.5414​​.

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Lee S.-M., and S.-K. Min, 2018: Heat stress changes over East Asia under 1.5℃ and 2℃ global warming target. J. Climate, 31, 2819-2831. doi: 10.1175/JCLI-D-17-0449.1

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Nguyen T.-H., S.-K. Min, S. Paik, and D. Lee, 2018: Time of emergence in regional precipitation changes: An updated assessment using the CMIP5 multi-model ensemble. Climate Dyn., 51, 3179-3183, doi: 10.1007/s00382.

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Son S.-W., ​S.-Y. Kim and S.-K. Min, 2018: Widening of the Hadley cell from Last Glacial Maximum (LGM) to future climate. J. Climate, 31, 267-281.​ doi: 10.1175/JCLI-D-17-0328.1

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Park, I.-H.and S.-K. Min, 2017: Role of convective precipitation in the relationship between sub-daily extreme precipitation and temperature. J. Climate., 30, 9527-9537. doi: 10.1175/JCLI-D-17-0075.1